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Soliton Random Walk and the Cluster-Stripping Problem in Ultralight Dark Matter

机译:孤子随机步行和超轻暗物质中的簇剥离问题

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摘要

Simulations of ultralight, similar to 10(-22) eV, bosonic dark matter exhibit rich wavelike structure, including a soliton core within a surrounding halo that continuously self-interferes on the de Broglie scale. We show here that as an inherent consequence, the soliton undergoes a confined random walk at the base of the halo potential. This is significant for the fate of the ancient central star cluster in Eridanus II, as the agitated soliton gravitationally shakes the star cluster in and out of the soliton on a timescale of similar to 100 Myr, so complete tidal disruption of the star cluster can occur within similar to 1 Gyr. This destructive effect can be mitigated by tidal stripping of the halo of Eridanus II, thereby reducing the agitation, depending on its orbit around the Milky Way. Our simulations show the Milky Way tide affects the halo much more than the soliton, so the star cluster in Eridanus II can survive for over 5 Gyr within the soliton if it formed after significant halo stripping.
机译:超轻的模拟,类似于10(-22 )EV,旋转暗物质表现出富裕的波状结构,包括孤子核心,在周围的光环中,连续自干扰De Broglie Scale。我们在这里展示作为一种固有的后果,孤子经历了光环潜力的基础。这对于伊利诺伊州古代中央星座集群的命运是重要的,因为激动的孤子引力地摇晃了孤子群,在类似于100多兆的时间内震动,因此可以发生完全潮汐中断星形集群类似于1 gyr。这种破坏性效果可以通过狂欢剥离的狂欢剥离,从而减少搅拌,这取决于其围绕银河系的轨道。我们的模拟显示银河系潮汐影响比孤子多得多,因此如果在显着的卤素剥离后形成橄榄球II中的星级群体可以在孤子中的5多个Gyl中存活。

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  • 来源
    《Physical review letters》 |2020年第20期|201301.1-201301.6|共6页
  • 作者单位

    Natl Taiwan Univ Dept Phys Taipei 10617 Taiwan|Natl Taiwan Univ Inst Astrophys Taipei 10617 Taiwan|Natl Taiwan Univ Ctr Theoret Phys Taipei 10617 Taiwan;

    Natl Taiwan Univ Dept Phys Taipei 10617 Taiwan|Natl Taiwan Univ Inst Astrophys Taipei 10617 Taiwan|Natl Taiwan Univ Ctr Theoret Phys Taipei 10617 Taiwan;

    Univ Basque Country Dept Theoret Phys UPV EHU E-48080 Bilbao Spain|Donostia Int Phys Ctr DIPC Donostia San Sebastian 20018 Gipuzkoa Spain|Basque Fdn Sci Ikerbasque E-48011 Bilbao Spain;

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